Wang C C, Wang A L, Rice A
Exp Parasitol. 1984 Feb;57(1):68-75. doi: 10.1016/0014-4894(84)90064-x.
A partly defined medium was successfully designed for the cultivation of Tritrichomonas foetus, an anaerobic protozoan parasite of cattle. The medium consists of hypoxanthine, uracil, and thymidine as the sole precursors of nucleotides in T. foetus. Elimination of any one of the three precursors from the medium led to cessation of T. foetus growth. The information provided by this medium verifies our previous observations that T. foetus is incapable of de novo purine and pyrimidine synthesis, that hypoxanthine can be converted to AMP and GMP, that uracil is incorporated into all pyrimidine ribonucleotides including UDP-glucose--the precursor of glycogen synthesis, and that thymidine is the only precursor of TMP. The omission of folate from the medium, without affecting growth of T. foetus, also supports our previous finding that the parasite does not have functioning dihydrofolate reductase or thymidylate synthetase. The successful plating of T. foetus on agar plates incorporating the partly defined medium with near 100% plating efficiency makes it possible to isolate T. foetus mutants for further studies of purine and pyrimidine metabolism in this parasite.
已成功设计出一种部分限定培养基,用于培养胎儿三毛滴虫,它是牛的一种厌氧原生动物寄生虫。该培养基由次黄嘌呤、尿嘧啶和胸腺嘧啶核苷作为胎儿三毛滴虫核苷酸的唯一前体组成。从培养基中去除这三种前体中的任何一种都会导致胎儿三毛滴虫生长停止。这种培养基提供的信息证实了我们之前的观察结果,即胎儿三毛滴虫无法从头合成嘌呤和嘧啶,次黄嘌呤可转化为AMP和GMP,尿嘧啶可掺入所有嘧啶核糖核苷酸,包括糖原合成的前体UDP - 葡萄糖,并且胸腺嘧啶核苷是TMP的唯一前体。从培养基中省略叶酸,在不影响胎儿三毛滴虫生长的情况下,也支持了我们之前的发现,即该寄生虫没有功能性的二氢叶酸还原酶或胸苷酸合成酶。将胎儿三毛滴虫成功接种在含有部分限定培养基的琼脂平板上,接种效率接近100%,这使得分离胎儿三毛滴虫突变体成为可能,以便进一步研究该寄生虫中的嘌呤和嘧啶代谢。